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What Is Multi-Slide Metal Stamping? How Does It Work? : A Comprehensive Guide

  Brief Overview of Neway's Expertise In Metal Stamping Neway, a leading custom parts manufacturer, excels in metal stamping, Including Progressive Die Stamping , Deep Drawn Metal Stamping , Transfer Die Stamping, and Multi-Slide Metal Stamping. It is a pivotal facet of its comprehensive one-stop service for custom parts. Focusing on precision engineering, Neway employs various metal stamping techniques, including multi-slide metal stamping, to meet diverse client needs. The company's expertise is seamlessly integrating traditional methods with cutting-edge technologies, ensuring efficient and high-quality production across industries. Neway's commitment to excellence is underscored by its adeptness in tooling and die design, material selection, and meticulous quality control throughout the metal stamping process. By leveraging experience and innovation, Neway consistently delivers custom parts that meet tight tolerances and adhere to the highest industry standards. Client

What Is The Shrinkage of Metal Injection Molding?

  Understanding MIM Shrinkage The shrinkage in Metal Injection Molding (MIM) is a critical consideration in the manufacturing process. During MIM, metal powders are mixed with a binder to create a feedstock, which is then molded into the desired shape. After molding, the parts go through a debinding process to remove the binder, and then they are sintered at high temperatures to achieve the final metal part. Shrinkage in MIM occurs primarily during the sintering phase . During sintering, the metal particles in the feedstock bond together and densify, causing the part to shrink. The shrinkage can vary depending on several factors, including the material used, the specific MIM process parameters, and the part's geometry. Typically, the shrinkage in MIM falls within the range of 15% to 20%. It means a part initially molded will reduce size by 15% to 20% during sintering. The mold used for MIM is designed to produce parts slightly larger than the final specifications to compensate fo